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Functional analyses of a flavonol synthase - like gene from Camellia nitidissima reveal its roles in flavonoid metabolism during floral pigmentation

机译:茶树黄酮合成酶样基因的功能分析揭示了其在花色素沉着过程中黄酮代谢中的作用

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The flavonoids metabolic pathway plays central roles in floral coloration, in which anthocyanins and flavonols are derived from common precursors, dihydroflavonols. Flavonol synthase (FLS) catalyses dihydroflavonols into flavonols, which presents a key branch of anthocyanins biosynthesis. The yellow flower of Camellia nitidissima Chi. is a unique feature within the genus Camellia, which makes it a precious resource for breeding yellow camellia varieties. In this work, we characterized the secondary metabolites of pigments during floral development of C. nitidissima and revealed that accumulation of flavonols correlates with floral coloration. We first isolated CnFLS1 and showed that it is a FLS of C. nitidissima by gene family analysis. Second, expression analysis during floral development and different floral organs indicated that the expression level of CnFLS1 was regulated by developmental cues, which was in agreement with the accumulating pattern of flavonols. Furthermore, over-expression of CnFLS1 in Nicotiana tabacum altered floral colour into white or light yellow, and metabolic analysis showed significant increasing of flavonols and reducing of anthocyanins in transgenic plants. Our work suggested CnFLS1 plays critical roles in yellow colour pigmentation and is potentially a key point of genetic engineering toward colour modification in Camellia.
机译:黄酮类化合物的代谢途径在花色中起着核心作用,其中花青素和黄酮醇衍生自常见的前体二氢黄酮醇。黄酮醇合酶(FLS)将二氢黄酮醇催化为黄酮醇,这是花色苷生物合成的关键分支。茶花nitidissima池氏黄色花。是山茶属的一个独特功能,这使其成为繁殖黄色山茶花品种的宝贵资源。在这项工作中,我们表征了C. nitidissima的花发育过程中色素的次生代谢产物,并揭示了黄酮醇的积累与花色有关。我们首先分离出CnFLS1,并通过基因家族分析表明它是C. nitidissima的FLS。其次,在花发育过程中以及不同花器官中的表达分析表明,CnFLS1的表达水平受发育线索的调控,与黄酮醇的积累规律相吻合。此外,在烟草中CnFLS1的过表达将花色改变为白色或浅黄色,并且代谢分析显示转基因植物中黄酮醇显着增加而花色苷减少。我们的工作表明,CnFLS1在黄色色素沉着中起关键作用,并且可能是在茶花中进行颜色修饰的基因工程的关键点。

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